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Mobility of lattice defects: discrete and continuum approaches

机译:晶格缺陷的移动性:离散和连续方法

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In this paper, we study a highly idealized model of a moving lattice defect allowing for an explicit, "first principles" computation of a functional relation between the macroscopic config-urational force and the velocity of the defect. The discrete model is purely conservative and contains information only about elasticities of the constitutive elements. The apparent dissipation is due to the presence of microinstabilities and the nonlinearity-induced tunneling of the energy from long to short wavelengths. This type of "radiative damping" is believed to be generic and accounting for a considerable fraction of inelastic irreversibility associated with fracture, plasticity and phase transitions. The paper contains direct comparison of the exact lattice solution with various continuum and quasicontinuum approximations. Despite its simplicity, the model can be used directly for the description of dynamic phase transitions in thin films.
机译:在本文中,我们研究了一个高度理想的运动晶格缺陷模型,该模型允许对宏观结构力和缺陷速度之间的函数关系进行明确的“第一性原理”计算。离散模型纯粹是保守的,仅包含有关本构元素弹性的信息。明显的耗散归因于微不稳定性的存在以及能量从长波长到短波长的非线性诱导隧穿。这种类型的“辐射阻尼”被认为是通用的,并解释了与断裂,可塑性和相变有关的非弹性不可逆性的很大一部分。本文包含各种连续体和准连续体近似的精确晶格解的直接比较。尽管简单,但是该模型可以直接用于描述薄膜中的动态相变。

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